US20170342698A1 - Stormwater Filter - Google Patents
Stormwater Filter Download PDFInfo
- Publication number
- US20170342698A1 US20170342698A1 US15/531,686 US201515531686A US2017342698A1 US 20170342698 A1 US20170342698 A1 US 20170342698A1 US 201515531686 A US201515531686 A US 201515531686A US 2017342698 A1 US2017342698 A1 US 2017342698A1
- Authority
- US
- United States
- Prior art keywords
- vessel
- inlet
- screen
- stormwater filter
- outlet
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
- 238000004062 sedimentation Methods 0.000 claims description 12
- 230000007423 decrease Effects 0.000 claims description 3
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 24
- 239000013049 sediment Substances 0.000 description 12
- 239000000463 material Substances 0.000 description 5
- 239000005416 organic matter Substances 0.000 description 4
- 239000002245 particle Substances 0.000 description 4
- 238000012423 maintenance Methods 0.000 description 3
- 239000003673 groundwater Substances 0.000 description 2
- 230000000717 retained effect Effects 0.000 description 2
- 239000004576 sand Substances 0.000 description 2
- 230000000295 complement effect Effects 0.000 description 1
- 230000009977 dual effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 239000003344 environmental pollutant Substances 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 230000014759 maintenance of location Effects 0.000 description 1
- 235000015097 nutrients Nutrition 0.000 description 1
- 231100000719 pollutant Toxicity 0.000 description 1
- 239000011178 precast concrete Substances 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
Images
Classifications
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F5/00—Sewerage structures
- E03F5/14—Devices for separating liquid or solid substances from sewage, e.g. sand or sludge traps, rakes or grates
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D21/00—Separation of suspended solid particles from liquids by sedimentation
- B01D21/0012—Settling tanks making use of filters, e.g. by floating layers of particulate material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D21/00—Separation of suspended solid particles from liquids by sedimentation
- B01D21/003—Sedimentation tanks provided with a plurality of compartments separated by a partition wall
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D21/00—Separation of suspended solid particles from liquids by sedimentation
- B01D21/02—Settling tanks with single outlets for the separated liquid
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D21/00—Separation of suspended solid particles from liquids by sedimentation
- B01D21/24—Feed or discharge mechanisms for settling tanks
- B01D21/2405—Feed mechanisms for settling tanks
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F5/00—Sewerage structures
- E03F5/04—Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
- E03F5/0401—Gullies for use in roads or pavements
- E03F5/0403—Gullies for use in roads or pavements with a sediment trap
-
- E—FIXED CONSTRUCTIONS
- E03—WATER SUPPLY; SEWERAGE
- E03F—SEWERS; CESSPOOLS
- E03F5/00—Sewerage structures
- E03F5/04—Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps
- E03F5/0401—Gullies for use in roads or pavements
- E03F5/0404—Gullies for use in roads or pavements with a permanent or temporary filtering device; Filtering devices specially adapted therefor
Definitions
- the invention relates to a stormwater filter comprising a flow splitter and/or a substantially vertical screen.
- a filter may be used to remove the debris and sediment from the water before it enters into lakes and retention ponds.
- debris may be removed from the water using a filter screen which allows the water to pass therethrough along with sand, gravel and other forms of sediment. The sediment can then be removed in a sedimentation chamber.
- a stormwater filter comprising: a vessel having an inlet and an outlet; a screen disposed within the vessel and arranged to divide at least part of the vessel into an upper chamber and a lower chamber; and a flow splitter positioned adjacent the inlet of the vessel, the flow splitter comprising an inclined leading edge and first and second deflecting surfaces extending from the leading edge; wherein the first and second deflecting surfaces are angled relative to one another so as to direct incoming flow laterally away from an axis between the inlet and the outlet.
- the stormwater filter may further comprise a substantially vertical screen disposed adjacent the outlet in the upper section of the vessel.
- the vertical screen may comprise first and second screen portions which are angled relative to one another.
- the first and second screen portions may be each hingedly connected to the vessel and are detachably coupled to one another at their distal ends.
- a stormwater filter comprising: a vessel having an inlet and an outlet; a screen disposed within the vessel and arranged to divide at least part of the vessel into an upper section and a lower section; a substantially vertical screen disposed adjacent the outlet in the upper section of the vessel; wherein the vertical screen comprises first and second screen portions which are angled relative to one another, wherein the first and second screen portions are each hingedly connected to the vessel and are detachably coupled to one another at their distal ends.
- the screen may comprise one or more removable sections which provide access to the lower chamber from the upper chamber.
- the first and second screen portions can be retracted so that an underlying removable section can be removed or hinged from horizontal to vertical in order to provide access to the lower chamber.
- the stormwater filter may further comprise a flow splitter positioned adjacent the inlet of the vessel, the flow splitter comprising an inclined leading edge and first and second deflecting surfaces extending from the leading edge; wherein the first and second deflecting surfaces are angled relative to one another so as to direct incoming flow laterally away from an axis between the inlet and the outlet.
- the flow splitter By deflecting the incoming water laterally away from the outlet, the flow splitter is able to prevent the incoming water from passing directly from the inlet to the outlet. This prevents short-circuiting (i.e. water flowing directly from the inlet to the outlet), thereby increasing the time that each water molecule is within the vessel and forcing the particles to interact with surfaces within the vessel so as to encourage sedimentation in the vessel of particles within the water.
- the inclined leading edge prevents long stringy debris from getting wrapped around the flow splitter.
- the shape of the flow splitter therefore prevents ragging which can quickly lead to a blockage.
- the first and second deflecting surfaces may be triangular.
- the flow splitter may be tetrahedron shaped.
- the flow splitter may be located between the inlet and the outlet.
- the flow splitter may be located on the screen adjacent the inlet and the outlet.
- the flow splitter may be positioned so that the leading edge is aligned with the axis between the inlet and the outlet.
- the screen may comprise an inlet ramp which is attached to the vessel below the inlet and a horizontal screen section which extends from the inlet ramp into the vessel.
- the flow splitter may be located on the inlet ramp.
- a height of the horizontal screen section within the vessel may be adjustable.
- the vessel may comprise a plurality of uprights which are each configured to receive the horizontal screen section in a plurality of positions to adjust the height of the horizontal screen section.
- the inlet ramp and the horizontal screen section may be articulated relative to one another.
- the inlet ramp may be pivotably connected to the vessel below the inlet and/or to the horizontal screen section.
- the inlet ramp may be slidably connected to at least one of the vessel or the horizontal screen section so as to increase or decrease a gap formed therebetween.
- a cover plate may be provided over the gap.
- the stormwater filter may further comprise at least one wall disposed within the vessel and dividing the lower section of the vessel into a plurality of sedimentation chambers.
- FIG. 1 is a front perspective view of a stormwater filter according to an embodiment of the invention with a side wall and an upper wall cutaway;
- FIG. 2 is a rear perspective view of the stormwater filter with the side wall and upper wall cutaway;
- FIG. 3 is a plan view of the stormwater filter
- FIG. 4 is a front view of the stormwater filter showing the vertical screen in a retracted position
- FIG. 5 is a side view of the stormwater filter with the horizontal screen in a lower position
- FIG. 6 is a side view of the stormwater filter with the horizontal screen in an upper position.
- FIGS. 1 to 3 show a stormwater filter 2 according to an embodiment of the invention.
- the stormwater filter 2 is formed generally by a cuboid vessel 4 .
- the vessel 4 comprises a front wall 6 , a rear wall 8 , a left side wall 10 , a right side wall 12 (see FIGS. 3 and 4 ), a lower wall 14 and an upper wall 16 (see FIG. 5 ).
- the vessel 4 may be a precast concrete structure.
- the front wall 6 is provided with an opening which receives an inlet pipe 18 (herein, simply the “inlet”).
- the rear wall 8 is provided with an opening which receives an outlet pipe 20 (herein, simply the “outlet”).
- a section of the inlet 18 and the outlet 20 may be integral to the vessel 4 .
- a horizontal screen 22 is disposed within the vessel 4 .
- the horizontal screen 22 extends between the left and right side walls 10 , 12 and is arranged so as to be parallel to the lower wall 14 .
- the horizontal screen 22 is connected to the front wall 6 by an inlet ramp 23 which also extends between the left and right side walls 10 , 12 .
- the inlet ramp 23 connects to the front wall 6 at a position which is below the inlet 18 .
- the inlet ramp 23 is articulated relative to the horizontal screen 22 , as will be described in detail below.
- the horizontal screen 22 extends from the inlet ramp 23 towards the rear wall 8 , but terminates away from the rear wall 8 , as shown.
- the horizontal screen 22 and the inlet ramp 23 divide at least part of the vessel 4 into a lower chamber 24 and an upper chamber 26 .
- the inlet ramp 23 connects to the front wall 6 at a position which is below the inlet 18 such that the inlet 18 opens into the upper chamber 26 .
- the horizontal screen 22 and the inlet ramp 23 are formed from a grate, grid or mesh which acts as a filter.
- the materials of the horizontal screen 22 and the inlet ramp 23 are selected to allow water and smaller debris to pass through the horizontal screen 22 and the inlet ramp 23 from the upper chamber 26 to the lower chamber 24 , while larger debris is retained within the upper chamber 26 .
- First and second dividing walls 28 a , 28 b extend across the vessel 4 between the left and right side walls 10 , 12 and upwards from the lower wall 14 .
- the first and second dividing walls 28 a , 28 b are thus arranged so as to be parallel to the front and rear walls 6 , 8 .
- the first and second dividing walls 28 a , 28 b divide the lower chamber 24 into three discrete sedimentation chambers 30 .
- a first sedimentation chamber 30 a is formed between the front wall 6 and the first dividing wall 28 a
- a second sedimentation chamber 30 b is formed between the first dividing wall 28 a and the second dividing wall 28 b
- a third sedimentation chamber 30 c is formed between the second dividing wall 28 b and the rear wall 8 .
- the horizontal screen 22 may comprise one or more removable sections which provide access to the lower chamber 24 from the upper chamber 26 for maintenance.
- the removable sections may be hingedly connected to a portion of the remainder of the horizontal screen 22 to allow the section to be rotated from a horizontal position to a vertical position.
- the removable sections provide access to each of the sedimentation chambers 30 a , 30 b , 30 c.
- the upper wall 16 may be provided with one or more openings, such as manholes, which provide access to the interior of the vessel 4 for maintenance.
- the upper wall 16 or a portion thereof may be hingedly connected to provide access.
- a vertical screen 32 extends upwards from the horizontal screen 22 in a region of the upper chamber 26 adjacent the outlet 20 .
- the vertical screen 32 is formed by separate first and second screen portions 34 a , 34 b .
- the first screen portion 34 a is hingedly connected to the left side wall 10 and the second screen portion 34 b is hingedly connected to the right side wall 12 .
- the vertical screen 32 is formed from a grate, grid or mesh which acts as a filter.
- Distal ends of the first and second screen portions 34 a , 34 b are detachably coupled to one another midway between the left and right side walls 10 , 12 .
- the distal end of each of the first and second screen portions 34 a , 34 b is provided with one or more barrel portions (not specifically shown).
- the barrel portions of the first screen portion 34 a are located at different heights to the barrel portions of the second screen portion 34 b .
- the complementary barrel portions interleave or interdigitate with one another when aligned at the center of the vessel 4 such that the barrel portions align to form a continuous barrel.
- the barrel receives a pin 36 which interlocks the first and second screen portions 34 a , 34 b .
- the interconnection between the first and second screen portions 34 a , 34 b may, however, be formed in any suitable manner.
- first and second portions 34 a , 34 b are sized such that they are angled relative to one another when interlocked by the pin 36 .
- each of the first and second screen portions 34 a , 34 b has a length which exceeds half of the width between left and right side walls 10 , 12 .
- the distal ends of the first and second screen portions 34 a , 34 b thus are located closer to the inlet 18 than the hinged ends adjacent the left and right side walls 10 , 12 .
- the vertical screen 32 therefore has a V-shaped or chevron form.
- the horizontal screen 22 may comprise one or more removable sections which provide access to the lower chamber 24 from the upper chamber 26 .
- the first and second screen portions 34 a , 34 b can be retracted as shown in FIG. 4 so that an underlying removable section can be removed or hinged from horizontal to vertical in order to provide access to at least the third sedimentation chamber 30 c .
- the pin 36 can be removed from the barrel portions of the first and second screen portions 34 a , 34 b so that they are no longer interlocked.
- the first and second screen portions 34 a , 34 b can thus be rotated towards the outlet 20 so that they partially overlap with one another and are almost parallel to one another.
- the inlet ramp 23 is provided with a flow splitter 38 .
- the flow splitter 38 is positioned adjacent the inlet 18 .
- the flow splitter 38 is tetrahedron shaped and is arranged such that an edge 40 of the tetrahedron is aligned with an axis extending between the inlet 18 and the outlet 20 .
- the edge 40 thus forms a leading edge.
- the surfaces either side of the leading edge 40 form first and second deflecting surfaces 42 a , 42 b which are angled relative to one another.
- the leading edge 40 is inclined relative to the inlet ramp 23 .
- the horizontal screen 22 is connected to the left and right side walls 10 , 12 of the vessel 4 via a first pair of uprights 44 a , 44 b respectively attached to the left and right side walls 10 , 12 toward the front of the horizontal screen 22 and a second pair of uprights 46 a , 46 b respectively attached to the left and right side walls 10 , 12 toward the rear of the horizontal screen 22 .
- Each of the uprights 44 , 46 is provided with a plurality of openings spaced along at least part of the length of the upright 44 , 46 .
- the horizontal screen 22 is connected to the uprights 44 , 46 via corresponding openings using suitable fasteners, such as nuts and bolts, pins, etc.
- the first and second screen portions 34 a , 34 b of the vertical screen 32 are also connected to the uprights 46 a , 46 b respectively.
- the height of the horizontal screen 22 (and the vertical screen 32 ) above the lower wall 14 can be adjusted by affixing the horizontal screen 22 to appropriately positioned openings in the uprights 44 , 46 .
- the horizontal screen 22 can thus be moved from a lower position, as shown in FIG. 5 , where the horizontal screen 22 is adjacent the dividing walls 28 a , 28 b , to an upper position, as shown in FIG. 6 , where the horizontal screen 22 is spaced upward from the dividing walls 28 a , 28 b .
- the horizontal screen 22 may be provided with anchor points which allow it to be connected to a suitable hoist for raising and lowering the horizontal screen 22 .
- the inlet ramp 23 is articulated relative to the horizontal screen 22 , which allows for adjustment of the position of the horizontal screen 22 .
- the inlet ramp 23 is pivotably connected to the front wall 6 of the vessel 4 to allow the angle of the inlet ramp 23 to vary as the height of the horizontal screen 22 is adjusted.
- the inlet ramp 23 is pivotably connected to the horizontal screen 22 .
- the distance between the horizontal screen 22 and the position at which the inlet ramp 23 is pivotably connected to the front wall 6 also changes.
- a sliding connection between the inlet ramp 23 and the horizontal screen 22 is employed.
- the connection between the inlet ramp 23 and the horizontal screen translates towards the front of the horizontal screen 22 .
- the connection between the inlet ramp 23 and the horizontal screen translates further along the horizontal screen 22 towards the rear of the horizontal screen 22 .
- a cover plate 48 is disposed over the sliding connection between the inlet ramp 23 and the horizontal screen 22 .
- the cover plate 48 extends sufficiently in order to cover any gap formed between the inlet ramp 23 and the horizontal screen 22 when the horizontal screen 22 is in its uppermost position.
- the cover plate 48 thus prevents debris from passing between the inlet ramp 23 and the horizontal screen 22 and into the lower chamber 24 .
- the cover plate 48 is shown as a solid plate, it may also be formed of a screen material, as per the inlet ramp 23 and the horizontal screen 22 .
- the sliding connection could instead (or in addition) be formed between the inlet ramp 23 and the front wall 6 , and the cover plate 48 provided therebetween.
- the horizontal screen 22 may translate within the vessel 4 so as to obviate the need for a sliding connection.
- the stormwater filter 2 is installed in-line along a stormwater drain.
- the drain receives surface runoff in the event of a storm.
- Debris such as rubbish, leaves and other organic matter, and sediment such as gravel, grit and sand may be washed into the drain by the water.
- the water enters the upper chamber 26 of the vessel 4 via the inlet 18 .
- As the water enters the vessel 4 it contacts the flow splitter 38 located on the inlet ramp 23 .
- the first and second deflecting surfaces 42 a , 42 b of the flow splitter 38 deflect the incoming water laterally towards the left and right side walls 10 , 12 of the vessel 4 and away from the outlet 20 .
- the flow splitter 38 thus prevents the incoming water from passing directly from the inlet 18 to the outlet 20 . This minimizes short-circuiting, thereby increasing the time that each water molecule is within the vessel 4 and forcing the particles to interact with surfaces within the vessel 4 so as to encourage sedimentation of the particles within the water.
- the leading edge 40 of the flow splitter 38 is inclined. This arrangement prevents any long stringy debris getting wrapped around the flow splitter 38 .
- the shape of the flow splitter 38 therefore prevents ragging which can quickly lead to a blockage.
- the material of the inlet ramp 23 and the horizontal screen 22 is selected to prevent large debris, particularly leaves and other organic matter, from passing from the upper chamber 26 to the lower chamber 24 .
- the inlet ramp 23 allows a portion of the incoming flow to pass under the horizontal screen 22 , but directs all debris up and onto the horizontal screen 22 .
- the vertical screen 32 retains the debris within the upper chamber 26 such that the debris accumulates in the upper chamber 26 on the horizontal screen 22 or on the vertical screen 32 .
- the stormwater filter 2 thus has dual functionality in that it separates large debris from the flow which is retained in the upper chamber 26 and separates sediment which accumulates in the lower chamber 24 .
- first and second screen portions 34 a , 34 b are angled relative to the incoming flow, the flow acts to scour debris and sediment off the first and second screen portions 34 a , 34 b and force them towards the corners of the vessel 4 . This therefore prevents the vertical screen 32 from becoming blinded.
- the position of the vertical screen 32 adjacent the outlet 20 also maximizes the opportunity for material to settle on the horizontal screen 22 such that less material reaches the vertical screen 32 . This again, prevents the vertical screen 32 from becoming blinded.
- the height of the horizontal screen 22 is set such that between storm events the accumulated debris is kept above the level of water in the vessel 4 and thus remains dry. This prevents the debris, particularly organic matter, from decomposing and releasing nutrients into the stagnant water. Therefore, if the ground water level is too high and the horizontal screen is submerged between storm events, it can be raised to a higher position on the uprights 44 , 46 .
- the upper wall 16 access to the interior of the vessel 4 is provided through the upper wall 16 .
- This allows debris to be periodically removed from the upper chamber 26 .
- the lower chamber 24 can also be accessed through the removable sections of the horizontal screen 22 .
- the first and second screen portions 34 a , 34 b can be retracted so that the underlying removable section can be removed or hinged from horizontal to vertical in order to provide access to the lower chamber 24 .
- the debris and/or sediment can be removed from the vessel 4 using a suitable vacuum tanker or the like.
- the inlet 18 may be perpendicular to be the outlet 20 .
- the inlet 18 may also be embodied as a grate located at the surface.
- the stormwater filter 2 may receive water from a number of sources and thus be provided with a plurality of inlets.
- the flow splitter 38 has been described as being tetrahedron shaped, this is not necessary.
- the first and second deflecting surfaces 42 a , 42 b need not be triangular.
- the first and second deflecting surfaces 42 a , 42 b simply need to diverge away from one another from the leading edge 40 , which itself must be inclined.
- the leading edge 40 is inclined such that it remains inclined (i.e. not vertical) even when the horizontal screen 22 is in its highest position.
- the flow splitter 38 also need not be located within the vessel 4 itself and could instead be positioned within the inlet 18 .
- the vessel 4 has been described as having first and second dividing walls 28 a , 28 b , it will be appreciated that any number of dividing walls may be provided. Further, in certain applications, it may not be necessary to provide any dividing walls.
- the flow splitter 38 may be used without the horizontal and vertical screens 22 , 32 .
- the horizontal and vertical screens 22 , 32 may be used without the flow splitter 38 .
- horizontal and vertical screens 22 , 32 have been described as extending between the side walls of the chamber, they may instead be spaced from the side walls of the vessel and screen side walls provided to form a freestanding basket within the vessel. This may allow the basket to be more easily removed for maintenance.
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Hydrology & Water Resources (AREA)
- Public Health (AREA)
- Water Supply & Treatment (AREA)
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Filtration Of Liquid (AREA)
- Revetment (AREA)
- Cleaning Or Clearing Of The Surface Of Open Water (AREA)
- Sewage (AREA)
Abstract
Description
- The invention relates to a stormwater filter comprising a flow splitter and/or a substantially vertical screen.
- In the event of a storm, excess rain and groundwater is channeled from impervious surfaces, such as pavement, roofs and parking areas to storm drains. Debris, such as rubbish, leaves and other organic matter may be entrained in the water as it flows over the surface towards the drain. The water may also carry sediment and other associated pollutants into the drain.
- A filter may be used to remove the debris and sediment from the water before it enters into lakes and retention ponds. For example, debris may be removed from the water using a filter screen which allows the water to pass therethrough along with sand, gravel and other forms of sediment. The sediment can then be removed in a sedimentation chamber.
- It is, however, desirable to provide a stormwater filter which provides improved sedimentation and avoids the filter screen becoming blinded (blocked).
- In accordance with an aspect of the invention there is provided a stormwater filter comprising: a vessel having an inlet and an outlet; a screen disposed within the vessel and arranged to divide at least part of the vessel into an upper chamber and a lower chamber; and a flow splitter positioned adjacent the inlet of the vessel, the flow splitter comprising an inclined leading edge and first and second deflecting surfaces extending from the leading edge; wherein the first and second deflecting surfaces are angled relative to one another so as to direct incoming flow laterally away from an axis between the inlet and the outlet.
- The stormwater filter may further comprise a substantially vertical screen disposed adjacent the outlet in the upper section of the vessel.
- The vertical screen may comprise first and second screen portions which are angled relative to one another.
- The first and second screen portions may be each hingedly connected to the vessel and are detachably coupled to one another at their distal ends.
- In accordance with another aspect of the invention there is provided a stormwater filter comprising: a vessel having an inlet and an outlet; a screen disposed within the vessel and arranged to divide at least part of the vessel into an upper section and a lower section; a substantially vertical screen disposed adjacent the outlet in the upper section of the vessel; wherein the vertical screen comprises first and second screen portions which are angled relative to one another, wherein the first and second screen portions are each hingedly connected to the vessel and are detachably coupled to one another at their distal ends.
- The screen may comprise one or more removable sections which provide access to the lower chamber from the upper chamber. The first and second screen portions can be retracted so that an underlying removable section can be removed or hinged from horizontal to vertical in order to provide access to the lower chamber.
- The stormwater filter may further comprise a flow splitter positioned adjacent the inlet of the vessel, the flow splitter comprising an inclined leading edge and first and second deflecting surfaces extending from the leading edge; wherein the first and second deflecting surfaces are angled relative to one another so as to direct incoming flow laterally away from an axis between the inlet and the outlet.
- By deflecting the incoming water laterally away from the outlet, the flow splitter is able to prevent the incoming water from passing directly from the inlet to the outlet. This prevents short-circuiting (i.e. water flowing directly from the inlet to the outlet), thereby increasing the time that each water molecule is within the vessel and forcing the particles to interact with surfaces within the vessel so as to encourage sedimentation in the vessel of particles within the water.
- The inclined leading edge prevents long stringy debris from getting wrapped around the flow splitter. The shape of the flow splitter therefore prevents ragging which can quickly lead to a blockage.
- The first and second deflecting surfaces may be triangular.
- The flow splitter may be tetrahedron shaped.
- The flow splitter may be located between the inlet and the outlet.
- The flow splitter may be located on the screen adjacent the inlet and the outlet.
- The flow splitter may be positioned so that the leading edge is aligned with the axis between the inlet and the outlet.
- The screen may comprise an inlet ramp which is attached to the vessel below the inlet and a horizontal screen section which extends from the inlet ramp into the vessel.
- The flow splitter may be located on the inlet ramp.
- A height of the horizontal screen section within the vessel may be adjustable.
- The vessel may comprise a plurality of uprights which are each configured to receive the horizontal screen section in a plurality of positions to adjust the height of the horizontal screen section.
- The inlet ramp and the horizontal screen section may be articulated relative to one another.
- The inlet ramp may be pivotably connected to the vessel below the inlet and/or to the horizontal screen section.
- The inlet ramp may be slidably connected to at least one of the vessel or the horizontal screen section so as to increase or decrease a gap formed therebetween. A cover plate may be provided over the gap.
- The stormwater filter may further comprise at least one wall disposed within the vessel and dividing the lower section of the vessel into a plurality of sedimentation chambers.
- For a better understanding of the invention, and to show more clearly how it may be carried into effect, reference will now be made, by way of example, to the accompanying drawings, in which:
-
FIG. 1 is a front perspective view of a stormwater filter according to an embodiment of the invention with a side wall and an upper wall cutaway; -
FIG. 2 is a rear perspective view of the stormwater filter with the side wall and upper wall cutaway; -
FIG. 3 is a plan view of the stormwater filter; -
FIG. 4 is a front view of the stormwater filter showing the vertical screen in a retracted position; -
FIG. 5 is a side view of the stormwater filter with the horizontal screen in a lower position; and -
FIG. 6 is a side view of the stormwater filter with the horizontal screen in an upper position. -
FIGS. 1 to 3 show astormwater filter 2 according to an embodiment of the invention. - The
stormwater filter 2 is formed generally by acuboid vessel 4. Thevessel 4 comprises afront wall 6, arear wall 8, aleft side wall 10, a right side wall 12 (seeFIGS. 3 and 4 ), alower wall 14 and an upper wall 16 (seeFIG. 5 ). Thevessel 4 may be a precast concrete structure. - The
front wall 6 is provided with an opening which receives an inlet pipe 18 (herein, simply the “inlet”). Similarly therear wall 8 is provided with an opening which receives an outlet pipe 20 (herein, simply the “outlet”). Alternatively, a section of theinlet 18 and theoutlet 20 may be integral to thevessel 4. - A
horizontal screen 22 is disposed within thevessel 4. Thehorizontal screen 22 extends between the left andright side walls lower wall 14. Thehorizontal screen 22 is connected to thefront wall 6 by aninlet ramp 23 which also extends between the left andright side walls inlet ramp 23 connects to thefront wall 6 at a position which is below theinlet 18. Theinlet ramp 23 is articulated relative to thehorizontal screen 22, as will be described in detail below. Thehorizontal screen 22 extends from theinlet ramp 23 towards therear wall 8, but terminates away from therear wall 8, as shown. - The
horizontal screen 22 and theinlet ramp 23 divide at least part of thevessel 4 into alower chamber 24 and anupper chamber 26. As described previously, theinlet ramp 23 connects to thefront wall 6 at a position which is below theinlet 18 such that theinlet 18 opens into theupper chamber 26. Thehorizontal screen 22 and theinlet ramp 23 are formed from a grate, grid or mesh which acts as a filter. The materials of thehorizontal screen 22 and theinlet ramp 23 are selected to allow water and smaller debris to pass through thehorizontal screen 22 and theinlet ramp 23 from theupper chamber 26 to thelower chamber 24, while larger debris is retained within theupper chamber 26. - First and second dividing
walls vessel 4 between the left andright side walls lower wall 14. The first and second dividingwalls rear walls walls lower chamber 24 into three discrete sedimentation chambers 30. Specifically, afirst sedimentation chamber 30 a is formed between thefront wall 6 and thefirst dividing wall 28 a, asecond sedimentation chamber 30 b is formed between thefirst dividing wall 28 a and thesecond dividing wall 28 b, and athird sedimentation chamber 30 c is formed between thesecond dividing wall 28 b and therear wall 8. - The
horizontal screen 22 may comprise one or more removable sections which provide access to thelower chamber 24 from theupper chamber 26 for maintenance. The removable sections may be hingedly connected to a portion of the remainder of thehorizontal screen 22 to allow the section to be rotated from a horizontal position to a vertical position. Preferably, the removable sections provide access to each of thesedimentation chambers - Similarly, the
upper wall 16 may be provided with one or more openings, such as manholes, which provide access to the interior of thevessel 4 for maintenance. Alternatively, theupper wall 16 or a portion thereof may be hingedly connected to provide access. - A
vertical screen 32 extends upwards from thehorizontal screen 22 in a region of theupper chamber 26 adjacent theoutlet 20. Thevertical screen 32 is formed by separate first andsecond screen portions first screen portion 34 a is hingedly connected to theleft side wall 10 and thesecond screen portion 34 b is hingedly connected to theright side wall 12. As per thehorizontal screen 22 and theinlet ramp 23, thevertical screen 32 is formed from a grate, grid or mesh which acts as a filter. - Distal ends of the first and
second screen portions right side walls second screen portions first screen portion 34 a are located at different heights to the barrel portions of thesecond screen portion 34 b. Accordingly, the complementary barrel portions interleave or interdigitate with one another when aligned at the center of thevessel 4 such that the barrel portions align to form a continuous barrel. The barrel receives apin 36 which interlocks the first andsecond screen portions second screen portions - As shown, the first and
second portions pin 36. Specifically, each of the first andsecond screen portions right side walls second screen portions inlet 18 than the hinged ends adjacent the left andright side walls vertical screen 32 therefore has a V-shaped or chevron form. - As described previously, the
horizontal screen 22 may comprise one or more removable sections which provide access to thelower chamber 24 from theupper chamber 26. The first andsecond screen portions FIG. 4 so that an underlying removable section can be removed or hinged from horizontal to vertical in order to provide access to at least thethird sedimentation chamber 30 c. In particular, thepin 36 can be removed from the barrel portions of the first andsecond screen portions second screen portions outlet 20 so that they partially overlap with one another and are almost parallel to one another. - The
inlet ramp 23 is provided with aflow splitter 38. Theflow splitter 38 is positioned adjacent theinlet 18. Theflow splitter 38 is tetrahedron shaped and is arranged such that anedge 40 of the tetrahedron is aligned with an axis extending between theinlet 18 and theoutlet 20. Theedge 40 thus forms a leading edge. The surfaces either side of the leadingedge 40 form first and second deflecting surfaces 42 a, 42 b which are angled relative to one another. The leadingedge 40 is inclined relative to theinlet ramp 23. - The
horizontal screen 22 is connected to the left andright side walls vessel 4 via a first pair ofuprights right side walls horizontal screen 22 and a second pair ofuprights 46 a, 46 b respectively attached to the left andright side walls horizontal screen 22. Each of the uprights 44, 46 is provided with a plurality of openings spaced along at least part of the length of the upright 44, 46. Thehorizontal screen 22 is connected to the uprights 44, 46 via corresponding openings using suitable fasteners, such as nuts and bolts, pins, etc. The first andsecond screen portions vertical screen 32 are also connected to theuprights 46 a, 46 b respectively. - As shown in
FIGS. 5 and 6 , the height of the horizontal screen 22 (and the vertical screen 32) above thelower wall 14 can be adjusted by affixing thehorizontal screen 22 to appropriately positioned openings in the uprights 44, 46. Thehorizontal screen 22 can thus be moved from a lower position, as shown inFIG. 5 , where thehorizontal screen 22 is adjacent the dividingwalls FIG. 6 , where thehorizontal screen 22 is spaced upward from the dividingwalls horizontal screen 22 may be provided with anchor points which allow it to be connected to a suitable hoist for raising and lowering thehorizontal screen 22. - As described previously, the
inlet ramp 23 is articulated relative to thehorizontal screen 22, which allows for adjustment of the position of thehorizontal screen 22. Theinlet ramp 23 is pivotably connected to thefront wall 6 of thevessel 4 to allow the angle of theinlet ramp 23 to vary as the height of thehorizontal screen 22 is adjusted. Similarly, theinlet ramp 23 is pivotably connected to thehorizontal screen 22. - As the height of the
horizontal screen 22 is adjusted, the distance between thehorizontal screen 22 and the position at which theinlet ramp 23 is pivotably connected to thefront wall 6 also changes. To allow for this, a sliding connection between theinlet ramp 23 and thehorizontal screen 22 is employed. Thus, as the height of thehorizontal screen 22 increases, the connection between theinlet ramp 23 and the horizontal screen translates towards the front of thehorizontal screen 22. Conversely, as the height of thehorizontal screen 22 decreases, the connection between theinlet ramp 23 and the horizontal screen translates further along thehorizontal screen 22 towards the rear of thehorizontal screen 22. - A
cover plate 48 is disposed over the sliding connection between theinlet ramp 23 and thehorizontal screen 22. Thecover plate 48 extends sufficiently in order to cover any gap formed between theinlet ramp 23 and thehorizontal screen 22 when thehorizontal screen 22 is in its uppermost position. Thecover plate 48 thus prevents debris from passing between theinlet ramp 23 and thehorizontal screen 22 and into thelower chamber 24. Although thecover plate 48 is shown as a solid plate, it may also be formed of a screen material, as per theinlet ramp 23 and thehorizontal screen 22. - It will be appreciated that the sliding connection could instead (or in addition) be formed between the
inlet ramp 23 and thefront wall 6, and thecover plate 48 provided therebetween. Alternatively, thehorizontal screen 22 may translate within thevessel 4 so as to obviate the need for a sliding connection. - In use, the
stormwater filter 2 is installed in-line along a stormwater drain. The drain receives surface runoff in the event of a storm. Debris such as rubbish, leaves and other organic matter, and sediment such as gravel, grit and sand may be washed into the drain by the water. - The water, with entrained debris and sediment, flows through the drain to the
stormwater filter 2. The water enters theupper chamber 26 of thevessel 4 via theinlet 18. As the water enters thevessel 4, it contacts theflow splitter 38 located on theinlet ramp 23. The first and second deflecting surfaces 42 a, 42 b of theflow splitter 38 deflect the incoming water laterally towards the left andright side walls vessel 4 and away from theoutlet 20. Theflow splitter 38 thus prevents the incoming water from passing directly from theinlet 18 to theoutlet 20. This minimizes short-circuiting, thereby increasing the time that each water molecule is within thevessel 4 and forcing the particles to interact with surfaces within thevessel 4 so as to encourage sedimentation of the particles within the water. - As described previously, the leading
edge 40 of theflow splitter 38 is inclined. This arrangement prevents any long stringy debris getting wrapped around theflow splitter 38. The shape of theflow splitter 38 therefore prevents ragging which can quickly lead to a blockage. - The material of the
inlet ramp 23 and thehorizontal screen 22 is selected to prevent large debris, particularly leaves and other organic matter, from passing from theupper chamber 26 to thelower chamber 24. - Owing to its incline, the
inlet ramp 23 allows a portion of the incoming flow to pass under thehorizontal screen 22, but directs all debris up and onto thehorizontal screen 22. Thevertical screen 32 retains the debris within theupper chamber 26 such that the debris accumulates in theupper chamber 26 on thehorizontal screen 22 or on thevertical screen 32. - As the water passes from the
inlet 18 towards theoutlet 20, sediment settles toward thelower wall 14 under gravity. The sediment settles against the first andsecond dividing walls outlet 20. - The
stormwater filter 2 thus has dual functionality in that it separates large debris from the flow which is retained in theupper chamber 26 and separates sediment which accumulates in thelower chamber 24. - As the first and
second screen portions second screen portions vessel 4. This therefore prevents thevertical screen 32 from becoming blinded. The position of thevertical screen 32 adjacent theoutlet 20 also maximizes the opportunity for material to settle on thehorizontal screen 22 such that less material reaches thevertical screen 32. This again, prevents thevertical screen 32 from becoming blinded. - The height of the
horizontal screen 22 is set such that between storm events the accumulated debris is kept above the level of water in thevessel 4 and thus remains dry. This prevents the debris, particularly organic matter, from decomposing and releasing nutrients into the stagnant water. Therefore, if the ground water level is too high and the horizontal screen is submerged between storm events, it can be raised to a higher position on the uprights 44, 46. - As described previously, access to the interior of the
vessel 4 is provided through theupper wall 16. This allows debris to be periodically removed from theupper chamber 26. Thelower chamber 24 can also be accessed through the removable sections of thehorizontal screen 22. As described previously, the first andsecond screen portions lower chamber 24. The debris and/or sediment can be removed from thevessel 4 using a suitable vacuum tanker or the like. - In other embodiments, the
inlet 18 may be perpendicular to be theoutlet 20. Theinlet 18 may also be embodied as a grate located at the surface. Thestormwater filter 2 may receive water from a number of sources and thus be provided with a plurality of inlets. - Although the
flow splitter 38 has been described as being tetrahedron shaped, this is not necessary. In particular, the first and second deflecting surfaces 42 a, 42 b need not be triangular. The first and second deflecting surfaces 42 a, 42 b simply need to diverge away from one another from the leadingedge 40, which itself must be inclined. The leadingedge 40 is inclined such that it remains inclined (i.e. not vertical) even when thehorizontal screen 22 is in its highest position. Theflow splitter 38 also need not be located within thevessel 4 itself and could instead be positioned within theinlet 18. - Although the
vessel 4 has been described as having first andsecond dividing walls - In certain applications, the
flow splitter 38 may be used without the horizontal andvertical screens vertical screens flow splitter 38. - Although the horizontal and
vertical screens - The invention is not limited to the embodiments described herein, and may be modified or adapted without departing from the scope of the present invention.
Claims (21)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US15/531,686 US10287769B2 (en) | 2014-12-04 | 2015-10-28 | Stormwater filter |
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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US201462087403P | 2014-12-04 | 2014-12-04 | |
PCT/GB2015/053229 WO2016087814A1 (en) | 2014-12-04 | 2015-10-28 | A stormwater filter |
US15/531,686 US10287769B2 (en) | 2014-12-04 | 2015-10-28 | Stormwater filter |
Publications (2)
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US20170342698A1 true US20170342698A1 (en) | 2017-11-30 |
US10287769B2 US10287769B2 (en) | 2019-05-14 |
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US15/531,686 Active US10287769B2 (en) | 2014-12-04 | 2015-10-28 | Stormwater filter |
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US (1) | US10287769B2 (en) |
EP (1) | EP3227500B1 (en) |
CN (1) | CN107208411B (en) |
AU (2) | AU2015356883B2 (en) |
GB (1) | GB2533001A (en) |
MY (1) | MY187985A (en) |
NZ (2) | NZ739980A (en) |
WO (1) | WO2016087814A1 (en) |
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US20160362883A1 (en) * | 2013-07-25 | 2016-12-15 | Abt, Inc. | Drainage device and methods for constructing and use |
US10202285B1 (en) * | 2013-05-30 | 2019-02-12 | Suntree Technologies Holdings, Llc | Dual screen treatment system |
US10238993B1 (en) | 2013-05-30 | 2019-03-26 | Suntree Technologies Holdings, Llc | Dual screen treatment systems with debris ramps and screened deflectors |
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- 2015-01-12 GB GB1500438.5A patent/GB2533001A/en not_active Withdrawn
- 2015-10-28 EP EP15791347.6A patent/EP3227500B1/en active Active
- 2015-10-28 US US15/531,686 patent/US10287769B2/en active Active
- 2015-10-28 CN CN201580065895.XA patent/CN107208411B/en active Active
- 2015-10-28 AU AU2015356883A patent/AU2015356883B2/en active Active
- 2015-10-28 WO PCT/GB2015/053229 patent/WO2016087814A1/en active Application Filing
- 2015-10-28 MY MYPI2017701965A patent/MY187985A/en unknown
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2019
- 2019-01-14 AU AU2019200221A patent/AU2019200221B2/en active Active
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US10238993B1 (en) | 2013-05-30 | 2019-03-26 | Suntree Technologies Holdings, Llc | Dual screen treatment systems with debris ramps and screened deflectors |
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US11261595B2 (en) * | 2017-09-10 | 2022-03-01 | Bio Clean Environmental Services, Inc. | Hydrodynamic separator for stormwater treatment |
US20220186486A1 (en) * | 2017-09-10 | 2022-06-16 | Bio Clean Environmental Services, Inc. | Hydrodynamic separator for stormwater treatment |
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US11552322B2 (en) | 2018-07-24 | 2023-01-10 | Aquacycl, Inc. | Branched anodes for microbial fuel cells |
US12347907B2 (en) | 2018-07-24 | 2025-07-01 | Aquacycl, Inc. | Branched anodes for microbial fuel cells |
USD875208S1 (en) * | 2018-07-31 | 2020-02-11 | Aquacycl Llc | Bioelectrochemical reactor |
USD899561S1 (en) | 2018-07-31 | 2020-10-20 | Aquacycl Llc | Bioelectrochemical reactor |
USD875207S1 (en) * | 2018-07-31 | 2020-02-11 | Aquacycl Llc | Bioelectrochemical reactor |
US11926547B2 (en) | 2019-02-27 | 2024-03-12 | Aquacycl, Inc. | Scalable floating micro-aeration unit, devices and methods |
US12365610B2 (en) | 2019-02-27 | 2025-07-22 | Aquacycl, Inc. | Scalable floating micro-aeration unit, devices and methods |
US11604482B2 (en) | 2020-03-16 | 2023-03-14 | Aquacycl, Inc. | Fluid flow control for water treatment systems |
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JP7641150B2 (en) | 2021-03-25 | 2025-03-06 | 積水化学工業株式会社 | Water storage and drainage device |
US20230080346A1 (en) * | 2021-09-16 | 2023-03-16 | Stormtrap, LLC | Systems, methods, and devices for removing contaminants from stormwater |
US11801459B2 (en) * | 2021-09-16 | 2023-10-31 | Stormtrap, LLC | Systems, methods, and devices for removing contaminants from stormwater |
Also Published As
Publication number | Publication date |
---|---|
MY187985A (en) | 2021-11-05 |
WO2016087814A1 (en) | 2016-06-09 |
GB201500438D0 (en) | 2015-02-25 |
GB2533001A (en) | 2016-06-08 |
EP3227500B1 (en) | 2019-12-04 |
US10287769B2 (en) | 2019-05-14 |
NZ732450A (en) | 2018-05-25 |
NZ739980A (en) | 2022-07-29 |
EP3227500A1 (en) | 2017-10-11 |
AU2015356883B2 (en) | 2018-10-25 |
AU2019200221A1 (en) | 2019-01-31 |
CN107208411A (en) | 2017-09-26 |
CN107208411B (en) | 2019-07-26 |
AU2015356883A1 (en) | 2017-06-29 |
AU2019200221B2 (en) | 2020-03-05 |
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